Offshore Energy
  • news
  • test
JobsNewsletter
Offshore Energy logo
Topics
  • News
  • Contracts & Tenders
  • Authorities & Government
  • Automation
  • Business & Finance
Network
  • Dredging Today
  • NavalToday
  • Offshore Energy
  • Offshore Wind
  • Maritieme Vacaturebank
Company
  • Advertising
  • Newsletter
  • Jobs

© 2026 Navingo. All rights reserved.

Home›Research & Development›US: NREL outlines new strategic vision for floating wind
Research & Development

August 19, 2020 · about 6 years ago

US: NREL outlines new strategic vision for floating wind

The U.S. Department of Energy’s National Renewable Energy Laboratory (NREL) has recently published a study on floating wind, unveiling a new strategic vision for the sector. NREL researchers have identified barriers that must be overcome to bring down the overall cost of energy produced, and then ou

2 minutes read
  • LinkedIn
  • X
  • Email
A Principle Power floating wind turbine at sea with the foundation in focus

The U.S. Department of Energy’s National Renewable Energy Laboratory (NREL) has recently published a study on floating wind, unveiling a new strategic vision for the sector.

NREL researchers have identified barriers that must be overcome to bring down the overall cost of energy produced, and then outlined a vision for an integrated systems approach with the potential to significantly improve the market feasibility of floating wind plants.

The proposed integrated systems design approach aims to help the industry deploy cost-effective floating turbine systems by 2030.

“While we’ve made great progress with innovations related to individual components and tools, only a comprehensive systems-based approach can allow floating wind technology to fully mature in commercial markets”, said NREL Offshore Wind Platform Lead and study co-author Walt Musial .

“A multidisciplinary effort makes it possible to simultaneously focus on a wide range of factors and then optimize designs to achieve a minimum system cost”.

Cost reductions in floating wind are unlikely to come from a single breakthrough invention, according to the study , but through a complementary combination of innovations in technologies, design features, and installation and operational strategies.

The NREL approach uses a fully integrated systems-engineering and techno-economic design to capture the complex interactions among physics, manufacturing, installation, and operation of floating wind systems and identify optimal designs that dramatically reduce costs.

The current approach to offshore wind system design is iterative, with each company bringing to the table its own area of expertise and profit motive, NREL writes.

“One manufacturer designs the turbine and tower, another company designs the substructure, and sometimes a separate developer tackles array layout and logistics. The tremendous complexity of the physical environment for floating installations and interplay of design components make this divide-and-conquer approach quite costly and less effective in identifying workable solutions”, said NREL Senior Research Engineer and study lead author Garrett Barter .

Reach the Offshore Energy industry in one go!

Offshore Energy is read by thousands of professionals every day.

Increase your visibility with banners, tell your story with a branded article, and showcase your expertise with a full-page company profile in our business directory.

CONTACT

Follow Offshore Energy on:

Filed under

Research & Development

Home of Energy Transition

Join thousands of industry professionals who start their day with our newsletter.

Trending Now

  1. 1ADES jack-up rig pair lines up drilling jobs in Nigerian and UK waters
  2. 2Odfjell Drilling’s rig remaining with Norwegian oil & gas operator for another year
  3. 3Karoon boosts Brazilian field’s oil output with all wells now online
  4. 4TotalEnergies offloading Mexican shallow water block to Grupo Carso

Related articles

AUV can operate at depths of up to 6,000 meters collecting high-resolution data; Credit: Jørgen Ramse Vadla
Authorities & Government

Advanced underwater vehicle goes on first mission to chart Norwegian Sea’s subseascape

about 1 month ago

ACUA's Pioneer USV in Plymouth Sound; Source: ACUA Ocean
Automation

UK’s testbed on the lookout for partners after spotlighting subsea range with multi-robot demo

about 1 month ago

Home of Energy Transition

Join thousands of industry professionals who start their day with our newsletter.

Subscribe free

Related news

AUV can operate at depths of up to 6,000 meters collecting high-resolution data; Credit: Jørgen Ramse Vadla
Authorities & Government

Advanced underwater vehicle goes on first mission to chart Norwegian Sea’s subseascape

about 1 month ago
ACUA's Pioneer USV in Plymouth Sound; Source: ACUA Ocean
Automation

UK’s testbed on the lookout for partners after spotlighting subsea range with multi-robot demo

about 1 month ago